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首页> 外文期刊>Microsystem technologies >Parylene-based implantable Pt-black coated flexible 3-D hemispherical microelectrode arrays for improved neural interfaces
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Parylene-based implantable Pt-black coated flexible 3-D hemispherical microelectrode arrays for improved neural interfaces

机译:基于聚对二甲苯的可植入Pt黑色涂层柔性3-D半球形微电极阵列,可改善神经界面

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摘要

In implantable medical systems, low-impedance electrode-tissue interface is important for maintaining signal quality for recording and effective charge transfer for stimulation. In this paper, we propose a novel hemispherical biocompatible and flexible microelectrode arrays (MEAs) which were fabricated by the process of micro electrical mechanical system (MEMS). Compared with conventional planar microelectrodes, the interface impedance of hemispherical microelectrodes decreased due to their increased surface area. Parylene C thin film with good biocompatibility and flexibility was chemical vapor deposited as packaging material for decreasing nerve tissue damage. Pt-black coatings were electroplated by applying current pulses in H_2PtCl_6 solution on electrode sites for the further decrease of interface impedance. Moreover, the geometrical and electrical properties of these MEAs were demonstrated by using a scanning electron microscope (SEM) and an electrochemical workstation. Experimental results showed that the interface impedance decreased by about 34% compared with conventional planar microelectrodes, and significantly decreased by 84% with Pt-black coatings on electrode sites compared with those uncoated microelectrodes.
机译:在可植入医疗系统中,低阻抗电极-组织界面对于维持记录信号质量和刺激有效电荷转移非常重要。在本文中,我们提出了一种新型的半球形生物相容性和柔性微电极阵列(MEA),该阵列是通过微机电系统(MEMS)的工艺制成的。与常规的平面微电极相比,半球形微电极的界面阻抗由于表面积增加而降低。化学气相沉积了具有良好生物相容性和柔韧性的聚对二甲苯C薄膜作为包装材料,以减少神经组织损伤。通过在电极位置的H_2​​PtCl_6溶液中施加电流脉冲来电镀Pt黑色涂层,以进一步降低界面阻抗。此外,通过使用扫描电子显微镜(SEM)和电化学工作站,证明了这些MEA的几何和电学性质。实验结果表明,与传统的平面微电极相比,界面阻抗降低了约34%,与未涂覆的微电极相比,电极位置上的Pt黑色涂层显着降低了84%。

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